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Ratan Gupta594123d2017-05-16 22:48:35 +05301#include "util.hpp"
2
William A. Kennington III5058f572019-01-30 17:18:14 -08003#include <arpa/inet.h>
Gunnar Mills57d9c502018-09-14 14:42:34 -05004#include <netinet/in.h>
5
William A. Kennington IIId27410f2019-01-30 17:15:43 -08006#include <cstddef>
William A. Kennington IIIc920bdb2019-04-19 14:23:06 -07007#include <cstring>
8#include <string>
9#include <string_view>
Ratan Gupta35297172018-11-28 18:40:16 +053010#include <xyz/openbmc_project/Common/error.hpp>
11
Gunnar Mills57d9c502018-09-14 14:42:34 -050012#include <gtest/gtest.h>
13
Ratan Gupta594123d2017-05-16 22:48:35 +053014namespace phosphor
15{
16namespace network
17{
18
William A. Kennington IIIc920bdb2019-04-19 14:23:06 -070019using namespace std::literals;
Ratan Gupta35297172018-11-28 18:40:16 +053020using InternalFailure =
21 sdbusplus::xyz::openbmc_project::Common::Error::InternalFailure;
Ratan Gupta594123d2017-05-16 22:48:35 +053022class TestUtil : public testing::Test
23{
Gunnar Mills57d9c502018-09-14 14:42:34 -050024 public:
25 TestUtil()
26 {
27 // Empty
28 }
Ratan Gupta594123d2017-05-16 22:48:35 +053029};
30
William A. Kennington IIIa00b1c32019-02-01 18:57:17 -080031TEST_F(TestUtil, AddrFromBuf)
32{
33 std::string tooSmall(1, 'a');
34 std::string tooLarge(24, 'a');
35
36 struct in_addr ip1;
37 EXPECT_EQ(1, inet_pton(AF_INET, "192.168.10.1", &ip1));
38 std::string_view buf1(reinterpret_cast<char*>(&ip1), sizeof(ip1));
39 InAddrAny res1 = addrFromBuf(AF_INET, buf1);
40 EXPECT_EQ(0, memcmp(&ip1, &std::get<struct in_addr>(res1), sizeof(ip1)));
41 EXPECT_THROW(addrFromBuf(AF_INET, tooSmall), std::runtime_error);
42 EXPECT_THROW(addrFromBuf(AF_INET, tooLarge), std::runtime_error);
43 EXPECT_THROW(addrFromBuf(AF_UNSPEC, buf1), std::runtime_error);
44
45 struct in6_addr ip2;
46 EXPECT_EQ(1, inet_pton(AF_INET6, "fdd8:b5ad:9d93:94ee::2:1", &ip2));
47 std::string_view buf2(reinterpret_cast<char*>(&ip2), sizeof(ip2));
48 InAddrAny res2 = addrFromBuf(AF_INET6, buf2);
49 EXPECT_EQ(0, memcmp(&ip2, &std::get<struct in6_addr>(res2), sizeof(ip2)));
50 EXPECT_THROW(addrFromBuf(AF_INET6, tooSmall), std::runtime_error);
51 EXPECT_THROW(addrFromBuf(AF_INET6, tooLarge), std::runtime_error);
52 EXPECT_THROW(addrFromBuf(AF_UNSPEC, buf2), std::runtime_error);
53}
54
William A. Kennington III5058f572019-01-30 17:18:14 -080055TEST_F(TestUtil, IpToString)
56{
57 struct in_addr ip1;
58 EXPECT_EQ(1, inet_pton(AF_INET, "192.168.10.1", &ip1));
59 EXPECT_EQ("192.168.10.1", toString(InAddrAny(ip1)));
60
61 struct in6_addr ip2;
62 EXPECT_EQ(1, inet_pton(AF_INET6, "fdd8:b5ad:9d93:94ee::2:1", &ip2));
63 EXPECT_EQ("fdd8:b5ad:9d93:94ee::2:1", toString(InAddrAny(ip2)));
William A. Kennington III5058f572019-01-30 17:18:14 -080064}
65
Nagaraju Goruganti067ca2d2018-01-17 01:12:00 -060066TEST_F(TestUtil, IpValidation)
67{
68 std::string ipaddress = "0.0.0.0";
69 EXPECT_EQ(true, isValidIP(AF_INET, ipaddress));
70
71 ipaddress = "9.3.185.83";
72 EXPECT_EQ(true, isValidIP(AF_INET, ipaddress));
73
74 ipaddress = "9.3.185.a";
75 EXPECT_EQ(false, isValidIP(AF_INET, ipaddress));
76
77 ipaddress = "9.3.a.83";
78 EXPECT_EQ(false, isValidIP(AF_INET, ipaddress));
79
80 ipaddress = "x.x.x.x";
81 EXPECT_EQ(false, isValidIP(AF_INET, ipaddress));
82
83 ipaddress = "0:0:0:0:0:0:0:0";
84 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
85
86 ipaddress = "1:0:0:0:0:0:0:8";
87 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
88
89 ipaddress = "1::8";
90 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
91
92 ipaddress = "0:0:0:0:0:FFFF:204.152.189.116";
93 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
94
95 ipaddress = "::ffff:204.152.189.116";
96 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
97
98 ipaddress = "a:0:0:0:0:FFFF:204.152.189.116";
99 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
100
101 ipaddress = "1::8";
102 EXPECT_EQ(true, isValidIP(AF_INET6, ipaddress));
Nagaraju Goruganti067ca2d2018-01-17 01:12:00 -0600103}
104
105TEST_F(TestUtil, PrefixValidation)
106{
107 uint8_t prefixLength = 1;
108 EXPECT_EQ(true, isValidPrefix(AF_INET, prefixLength));
109
110 prefixLength = 32;
111 EXPECT_EQ(true, isValidPrefix(AF_INET, prefixLength));
112
113 prefixLength = 0;
114 EXPECT_EQ(false, isValidPrefix(AF_INET, prefixLength));
115
116 prefixLength = 33;
117 EXPECT_EQ(false, isValidPrefix(AF_INET, prefixLength));
118
119 prefixLength = 33;
120 EXPECT_EQ(true, isValidPrefix(AF_INET6, prefixLength));
121
122 prefixLength = 65;
123 EXPECT_EQ(false, isValidPrefix(AF_INET, prefixLength));
Nagaraju Goruganti067ca2d2018-01-17 01:12:00 -0600124}
125
Ratan Gupta594123d2017-05-16 22:48:35 +0530126TEST_F(TestUtil, ConvertV4MasktoPrefix)
127{
128 std::string mask = "255.255.255.0";
129 uint8_t prefix = toCidr(AF_INET, mask);
130 EXPECT_EQ(prefix, 24);
131
132 mask = "255.255.0.0";
133 prefix = toCidr(AF_INET, mask);
134 EXPECT_EQ(prefix, 16);
135
136 mask = "255.0.0.0";
137 prefix = toCidr(AF_INET, mask);
138 EXPECT_EQ(prefix, 8);
139
140 mask = "255.224.0.0";
141 prefix = toCidr(AF_INET, mask);
142 EXPECT_EQ(prefix, 11);
143
Gunnar Mills57d9c502018-09-14 14:42:34 -0500144 // Invalid Mask
Ratan Gupta594123d2017-05-16 22:48:35 +0530145 mask = "255.0.255.0";
146 prefix = toCidr(AF_INET, mask);
147 EXPECT_EQ(prefix, 0);
148}
149
150TEST_F(TestUtil, convertV6MasktoPrefix)
151{
152 std::string mask = "ffff:ffff::";
153 uint8_t prefix = toCidr(AF_INET6, mask);
154 EXPECT_EQ(prefix, 32);
155
156 mask = "ffff:ffff:ffff::";
157 prefix = toCidr(AF_INET6, mask);
158 EXPECT_EQ(prefix, 48);
159
160 mask = "ffff:ffff:fc00::";
161 prefix = toCidr(AF_INET6, mask);
162 EXPECT_EQ(prefix, 38);
163
Gunnar Mills57d9c502018-09-14 14:42:34 -0500164 // Invalid Mask
Ratan Gupta594123d2017-05-16 22:48:35 +0530165 mask = "ffff:0fff::";
166 prefix = toCidr(AF_INET6, mask);
167 EXPECT_EQ(prefix, 0);
168}
169
Ratan Gupta11cef802017-05-29 08:41:48 +0530170TEST_F(TestUtil, isLinkLocaladdress)
Ratan Gupta594123d2017-05-16 22:48:35 +0530171{
172 std::string ipaddress = "fe80:fec0::";
Nagaraju Goruganti66b974d2017-10-03 08:43:08 -0500173 EXPECT_TRUE(isLinkLocalIP(ipaddress));
Ratan Gupta594123d2017-05-16 22:48:35 +0530174
Nagaraju Goruganti66b974d2017-10-03 08:43:08 -0500175 ipaddress = "2000:fe80:789::";
176 EXPECT_FALSE(isLinkLocalIP(ipaddress));
Ratan Gupta594123d2017-05-16 22:48:35 +0530177
178 ipaddress = "2000:fe80::";
Nagaraju Goruganti66b974d2017-10-03 08:43:08 -0500179 EXPECT_FALSE(isLinkLocalIP(ipaddress));
180
181 ipaddress = "169.254.3.3";
182 EXPECT_TRUE(isLinkLocalIP(ipaddress));
183
184 ipaddress = "3.169.254.3";
185 EXPECT_FALSE(isLinkLocalIP(ipaddress));
186
187 ipaddress = "3.3.169.254";
188 EXPECT_FALSE(isLinkLocalIP(ipaddress));
Ratan Gupta594123d2017-05-16 22:48:35 +0530189}
190
191TEST_F(TestUtil, convertPrefixToMask)
192{
193 std::string mask = toMask(AF_INET, 24);
194 EXPECT_EQ(mask, "255.255.255.0");
195
196 mask = toMask(AF_INET, 8);
197 EXPECT_EQ(mask, "255.0.0.0");
198
199 mask = toMask(AF_INET, 27);
200 EXPECT_EQ(mask, "255.255.255.224");
201}
202
William A. Kennington IIIc920bdb2019-04-19 14:23:06 -0700203TEST_F(TestUtil, CopyFromTooSmall)
204{
205 constexpr auto expected = "abcde"sv;
206 struct
207 {
208 uint8_t data[10];
209 } data;
210 static_assert(sizeof(data) > expected.size());
211 EXPECT_THROW(copyFrom<decltype(data)>(expected), std::runtime_error);
212}
213
214TEST_F(TestUtil, CopyFromSome)
215{
216 constexpr auto expected = "abcde"sv;
217 struct
218 {
219 uint8_t data[2];
220 } data;
221 static_assert(sizeof(data) < expected.size());
222 data = copyFrom<decltype(data)>(expected);
223 EXPECT_EQ(0, memcmp(&data, expected.data(), sizeof(data)));
224}
225
226TEST_F(TestUtil, CopyFromAll)
227{
228 constexpr auto expected = "abcde"sv;
229 struct
230 {
231 uint8_t data[5];
232 } data;
233 static_assert(sizeof(data) == expected.size());
234 data = copyFrom<decltype(data)>(expected);
235 EXPECT_EQ(0, memcmp(&data, expected.data(), sizeof(data)));
236}
237
238TEST_F(TestUtil, ExtractSome)
239{
240 constexpr auto expected = "abcde"sv;
241 auto buf = expected;
242 struct
243 {
244 uint8_t data[2];
245 } data;
246 static_assert(sizeof(data) < expected.size());
247 data = extract<decltype(data)>(buf);
248 EXPECT_EQ(0, memcmp(&data, expected.data(), sizeof(data)));
249 EXPECT_EQ(3, buf.size());
250 EXPECT_EQ(expected.substr(2), buf);
251}
252
253TEST_F(TestUtil, ExtractAll)
254{
255 constexpr auto expected = "abcde"sv;
256 auto buf = expected;
257 struct
258 {
259 uint8_t data[5];
260 } data;
261 static_assert(sizeof(data) == expected.size());
262 data = extract<decltype(data)>(buf);
263 EXPECT_EQ(0, memcmp(&data, expected.data(), sizeof(data)));
264 EXPECT_EQ(0, buf.size());
265}
266
267TEST_F(TestUtil, Equal)
268{
269 struct
270 {
271 int i;
272 } a, b{};
273 a.i = 4;
274 b.i = 4;
275
276 EXPECT_TRUE(equal(a, b));
277}
278
279TEST_F(TestUtil, NotEqual)
280{
281 struct
282 {
283 int i;
284 } a, b{};
285 a.i = 2;
286 b.i = 4;
287
288 EXPECT_FALSE(equal(a, b));
289}
290
William A. Kennington III1137a972019-04-20 20:49:58 -0700291namespace mac_address
292{
293
294TEST(MacFromString, Bad)
295{
296 EXPECT_THROW(fromString("0x:00:00:00:00:00"), std::runtime_error);
297 EXPECT_THROW(fromString("00:00:00:00:00"), std::runtime_error);
298 EXPECT_THROW(fromString(""), std::runtime_error);
299}
300
301TEST(MacFromString, Valid)
302{
303 EXPECT_TRUE(equal(ether_addr{}, fromString("00:00:00:00:00:00")));
304 EXPECT_TRUE(equal(ether_addr{0xff, 0xee, 0xdd, 0xcc, 0xbb, 0xaa},
305 fromString("FF:EE:DD:cc:bb:aa")));
306 EXPECT_TRUE(equal(ether_addr{0x00, 0x01, 0x02, 0x03, 0x04, 0x05},
307 fromString("0:1:2:3:4:5")));
308}
309
310TEST(MacToString, Valid)
311{
312 EXPECT_EQ("11:22:33:44:55:66",
313 toString({0x11, 0x22, 0x33, 0x44, 0x55, 0x66}));
314}
315
316TEST(MacIsEmpty, True)
317{
318 EXPECT_TRUE(isEmpty({}));
319}
320
321TEST(MacIsEmpty, False)
322{
323 EXPECT_FALSE(isEmpty(fromString("01:00:00:00:00:00")));
324 EXPECT_FALSE(isEmpty(fromString("00:00:00:10:00:00")));
325 EXPECT_FALSE(isEmpty(fromString("00:00:00:00:00:01")));
326}
327
328TEST(MacIsMulticast, True)
329{
330 EXPECT_TRUE(isMulticast(fromString("ff:ff:ff:ff:ff:ff")));
331 EXPECT_TRUE(isMulticast(fromString("01:00:00:00:00:00")));
332}
333
334TEST(MacIsMulticast, False)
335{
336 EXPECT_FALSE(isMulticast(fromString("00:11:22:33:44:55")));
337 EXPECT_FALSE(isMulticast(fromString("FE:11:22:33:44:55")));
338}
339
340TEST(MacIsUnicast, True)
341{
342 EXPECT_TRUE(isUnicast(fromString("00:11:22:33:44:55")));
343 EXPECT_TRUE(isUnicast(fromString("FE:11:22:33:44:55")));
344}
345
346TEST(MacIsUnicast, False)
347{
348 EXPECT_FALSE(isUnicast(fromString("00:00:00:00:00:00")));
349 EXPECT_FALSE(isUnicast(fromString("01:00:00:00:00:00")));
350 EXPECT_FALSE(isUnicast(fromString("ff:ff:ff:ff:ff:ff")));
351}
352
353TEST(MacIsLocalAdmin, True)
354{
355 EXPECT_TRUE(isLocalAdmin(fromString("02:11:22:33:44:55")));
356 EXPECT_TRUE(isLocalAdmin(fromString("FE:11:22:33:44:55")));
357}
358
359TEST(MacIsLocalAdmin, False)
360{
361 EXPECT_FALSE(isLocalAdmin(fromString("00:00:00:00:00:00")));
362 EXPECT_FALSE(isLocalAdmin(fromString("01:00:00:00:00:00")));
363 EXPECT_FALSE(isLocalAdmin(fromString("fd:ff:ff:ff:ff:ff")));
364}
365
366} // namespace mac_address
Gunnar Mills57d9c502018-09-14 14:42:34 -0500367} // namespace network
368} // namespace phosphor